H
Hossein Baharvand
Researcher at University of Science and Culture
Publications - 487
Citations - 20462
Hossein Baharvand is an academic researcher from University of Science and Culture. The author has contributed to research in topics: Embryonic stem cell & Stem cell. The author has an hindex of 56, co-authored 454 publications receiving 15081 citations. Previous affiliations of Hossein Baharvand include Avicenna Research Institute & Royan Institute.
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Journal ArticleDOI
Chicken Interspecies Chimerism Unveils Human Pluripotency.
Azimeh Akhlaghpour,Azimeh Akhlaghpour,Adeleh Taei,Seyyed Abolghasem Ghadami,Zahra Bahadori,Saeed Yakhkeshi,Sepideh Molamohammadi,Tahereh Kiani,Azam Samadian,Zahra Ghezelayagh,Zahra Ghezelayagh,Newsha Haghparast,Keynoosh Khalooghi,Thomas Braun,Hossein Baharvand,Hossein Baharvand,Seyedeh-Nafiseh Hassani +16 more
TL;DR: In this paper, the authors report that the developing chicken embryo is a permissive host for human pluripotent stem cells (hPSCs), allowing analysis of the pluripotency potential of hPSCs.
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Improved differentiation of human enriched CD133+CD24 + renal progenitor cells derived from embryonic stem cell with embryonic mouse kidney-derived mesenchymal stem cells co-culture
TL;DR: E-KMSC and fibronectin are suggested as a promising supplementary factor to further induce differentiation of RP cells into renal epithelial cells and down-regulation of several RP cells, markers in CD133+CD24+ cells is revealed.
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The Therapeutic Potential of Differentiated Lung Cells from Embryonic Stem Cells in Lung Diseases.
Mohammad Reza Mokhber Dezfouli,Sirous Sadeghian Chaleshtori,Mohammad Mehdi Dehghan,Hamid Tavanaeimanesh,Hossein Baharvand,Yaser Tahamtani +5 more
TL;DR: The therapeutic effects of differentiated lung cells from embryonic stem cells in lung diseases and the use of ESCs that can replace the damaged epithelial and endothelial cells are studied.
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Trichostatin A Promotes the Conversion of Astrocytes to Oligodendrocyte Progenitors in a Defined Culture Medium.
TL;DR: TSA is introduced as an inducer for production of OPCs from astrocytes and could be considered a potential way for the treatment of demyelinating diseases.
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Mechanical reinforcement of urinary bladder matrix by electrospun polycaprolactone nanofibers
Amir Mohammad Ghafari,Sareh Rajabi-Zeleti,Mohammad Naji,Mohammad Hossein Ghanian,Hossein Baharvand +4 more
TL;DR: A simple process is developed to fabricate hybrid hydrogel scaffolds with a biomimetic architecture from the natural urinary bladder extracellular matrix (ECM) and synthetic polycaprolactone nanofibers, in order to obtain a scaffold with optimized mechanical and biological properties for bladder tissue engineering.